Bian Jianchun, Li Dan, Bai Zhixuan, Li Qian, Lyu Daren, Zhou Xiuji
Key Laboratory of Middle Atmosphere and Global Environment Observation, Institute of Atmospheric Physics, Chinese Academy of Sciences, Beijing 100029, China.
College of Earth and Planetary Sciences, University of Chinese Academy of Sciences, Beijing 100049, China.
Natl Sci Rev. 2020 Mar;7(3):516-533. doi: 10.1093/nsr/nwaa005. Epub 2020 Jan 23.
Due to its surrounding strong and deep Asian summer monsoon (ASM) circulation and active surface pollutant emissions, surface pollutants are transported to the stratosphere from the Tibetan Plateau region, which may have critical impacts on global climate through chemical, microphysical and radiative processes. This article reviews major recent advances in research regarding troposphere-stratosphere transport from the region of the Tibetan Plateau. Since the discovery of the total ozone valley over the Tibetan Plateau in summer from satellite observations in the early 1990s, new satellite-borne instruments have become operational and have provided significant new information on atmospheric composition. In addition, measurements and model simulations are used to investigate deep convection and the ASM anticyclone, surface sources and pathways, atmospheric chemical transformations and the impact on global climate. Also challenges are discussed for further understanding critical questions on microphysics and microchemistry in clouds during the pathway to the global stratosphere over the Tibetan Plateau.
由于其周围强大而深厚的亚洲夏季风(ASM)环流以及活跃的地表污染物排放,地表污染物从青藏高原地区被输送到平流层,这可能通过化学、微物理和辐射过程对全球气候产生关键影响。本文综述了近期关于青藏高原地区对流层-平流层传输研究的主要进展。自20世纪90年代初通过卫星观测发现夏季青藏高原上空的总臭氧低谷以来,新的卫星载仪器开始运行,并提供了有关大气成分的重要新信息。此外,测量和模型模拟被用于研究深对流和亚洲夏季风反气旋、地表源和路径、大气化学转化以及对全球气候的影响。还讨论了在进一步理解青藏高原上空通往全球平流层路径中云的微物理和微化学关键问题方面所面临的挑战。